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Microwave-assisted synthesis and processing of Al-Doped, Ga-Doped, and Al, Ga Codoped ZnO for the pursuit of optimal conductivity for transparent conducting film fabrication

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Version 2 2020-12-18, 14:11
Version 1 2017-05-11, 10:09
journal contribution
posted on 2020-12-18, 14:11 authored by D.S.Y. (Subhashi) Jayathilake, Nirmal Peiris, Jagdeep Sagu, Dominic B. Potter, Upul Wijayantha-Kahagala-Gamage, C.J. Carmalt, Darren SoutheeDarren Southee
This work reports the microwave-assisted fabrication of highly conducting Al-doped ZnO (AZO), Gadoped ZnO (GZO), and Al, Ga codoped ZnO (AGZO) materials as cheaper earth abundant alternatives to indium tin oxide (ITO) for transparent conducting applications. All three doped ZnO powder samples were compressed into pellets, and their electrical properties were evaluated after the postsynthesis heat treatment. The heat treatment was performed by sintering the pellets at 600 °C in a reducing atmosphere using either conventional radiant annealing for 3 h or microwave annealing for 90 s. The Al and Ga dopant levels were systematically varied from 0.5 to 2.5 at. %, and it was found that the lowest resistivity values for the pelleted singly doped ZnO powders exist when the doping level is adjusted to 1.5 at. % for both AZO and GZO, giving resistivity values of 4.4 × 10−3 and 4.3 × 10−3 Ω·cm, respectively. The lowest resistivity of 5.6 × 10−4 Ω·cm was achieved for the pelleted codoped AGZO powder using the optimized Al and Ga dopant levels. Notably, this value is one magnitude lower than the best literature reported value for conventionally synthesized codoped AGZO powder. The resistivity values obtained for the pellets after radiant and microwave postsynthesis heat treatment are comparable, although the microwave heat treatment was performed only for 90 s, compared to 3 h for conventional radiant heat treatment. Hence, significant gains were made in the postannealing step by reducing time, cost, and energy required, benefiting our thrust for finding sustainable routes toward alternative low-cost transparent conducting oxides. As a proof of concept, transparent conducting thin films were fabricated via a simple aerosolassisted deposition technique using our best conducting AGZO nanoparticles. The films exhibited a visible transmittance as good as 90% and a resistivity of 5.7 × 10−3 Ω·cm, which can compete with the existing high cost ITO films.

Funding

This research was funded by the UK Engineering and Physical Sciences Research Council (EPSRC) under grant number EP/L017709/1.

History

School

  • Science

Department

  • Chemistry

Published in

ACS Sustainable Chemistry & Engineering

Volume

5

Issue

6

Pages

4820-4829

Citation

JAYATHILAKE, D.S.Y. ...et al., 2017. Microwave assisted synthesis and processing of Al, Ga and Al,Ga Co-doped ZnO for the pursuit of optimal conductivity for transparent conducting film fabrication. ACS Sustainable Chemistry & Engineering, 5 (6), pp 4820–4829.

Publisher

American Chemical Society

Version

  • VoR (Version of Record)

Publisher statement

This work is made available according to the conditions of the Creative Commons Attribution 4.0 International (CC BY 4.0) licence. Full details of this licence are available at: http://creativecommons.org/licenses/ by/4.0/

Acceptance date

2017-04-11

Publication date

2017-04-24

Copyright date

2017

Notes

This is an Open Access Article. It is published by American Chemical Society under the Creative Commons Attribution 4.0 Unported Licence (CC BY). Full details of this licence are available at: http://creativecommons.org/licenses/by/4.0/

ISSN

2168-0485

Language

  • en

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